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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Tailored surface chemistry of SiO2 particles with improved rheological, thermal-mechanical and adhesive properties of epoxy based composites for underfill applications
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Tailored surface chemistry of SiO2 particles with improved rheological, thermal-mechanical and adhesive properties of epoxy based composites for underfill applications

机译:SiO2颗粒的量身定制的表面化学,具有改进的环氧基复合材料的流变,热机械和粘合性能,用于填充应用

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摘要

Recently, the silica particles filled epoxy-based composites underfill has gained more and more attentions with the development of flip chip technology towards high density and fine-pitch. However, serious agglomeration and poor dispersion of SiO2 in polymer matrix inevitably leads to deterioration of the rheological and thermal-mechanical properties. The filler surface treatment technology has been well demonstrated to be effective in controlling interfacial compatibility and interfacial interaction of their filled composites and thus enhancing their mechanical properties. However, the role of surface characteristics of SiO2 fillers on the properties associated with underfill such as rheological, coefficient of thermal expansion (CTE) as well as adhesive strength has been rarely reported. In this paper, surface modification of SiO2 particles have been conducted using silane coupling agents with various functional groups. We have attempted to establish a qualitative structure-property relationship between microscopic filler surface chemistry and macroscopic properties of the resulting composites underfill. The results showed that surface modification enabled to decrease underfill viscosity obviously and surface modification with nonpolar groups, such as methacryloxy and phenyl groups showed a much higher efficiency for viscosity reduction than their polar groups counterparts, such as amino and epoxy groups. Meanwhile, underfill with these nonpolar groups modified SiO2 exhibited much higher adhesion strength, accompanied by a conversion of failure mode from the adhesive failure to cohesion failure. In contrast, surface modification with those polar groups was more beneficial to decrease CTE of composites underfill. Our work is believed to be of great value for the design of SiO2 particle-based composites underfill with tailored properties.
机译:近来,二氧化硅颗粒填充的环氧基复合材料底部填充物越来越多地引入倒装芯片技术朝向高密度和细间距的开发。然而,SiO 2在聚合物基质中的严重凝聚和差的分散不可避免地导致流变和热机械性能的劣化。填充表面处理技术得到了很好的说明,可有效地控制其填充复合材料的界面相容性和界面相互作用,从而提高其机械性能。然而,已经很少有很少报道SiO2填料表面特征对与底部填充的底部填充物相关的性质以及热膨胀系数(CTE)以及粘合强度的作用。本文使用具有各种官能团的硅烷偶联剂进行的SiO 2颗粒的表面改性。我们试图建立所得复合材料底部填充物的显微填料表面化学和宏观性质之间的定性结构性关系。结果表明,显着降低底部填充粘度的表面改性和具有非极性基团的表面改性,例如甲基丙烯酰氧基和苯基,比其极性基团对应物,例如氨基和环氧基团,效率高得多的粘度降低效率。同时,随着这些非极性基团改性SiO2的底部填充粘合强度较高,伴随着从粘合剂衰竭到粘合衰竭的失效模式转化。相反,具有这些极性基团的表面改性更有益于减少复合材料底部填充的CTE。我们的工作被认为是SiO2基于粒子复合材料的设计具有很大的价值,其具有量身定制的属性。

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